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DOI10.1016/j.foreco.2020.118344
Assessing the effects of thinning on stem growth allocation of individual Scots pine trees
Saarinen N.; Kankare V.; Yrttimaa T.; Viljanen N.; Honkavaara E.; Holopainen M.; Hyyppä J.; Huuskonen S.; Hynynen J.; Vastaranta M.
发表日期2020
ISSN0378-1127
卷号474
英文摘要Forest management alters the growing conditions and thus further development of trees. However, quantitative assessment of forest management on tree growth has been demanding as methodologies for capturing changes comprehensively in space and time have been lacking. Terrestrial laser scanning (TLS) has shown to be capable of providing three-dimensional (3D) tree stem reconstructions required for revealing differences between stem shapes and sizes. In this study, we used 3D reconstructions of tree stems from TLS and an unmanned aerial vehicle (UAV) to investigate how varying thinning treatments and the following growth effects affected stem shape and size of Scots pine (Pinus sylvestris L.) trees. The results showed that intensive thinning resulted in more stem volume and therefore total biomass allocation and carbon uptake compared to the moderate thinning. Relationship between tree height and diameter at breast height (i.e. slenderness) varied between both thinning intensity and type (i.e. from below and above) indicating differing response to thinning and allocation of stem growth of Scots pine trees. Furthermore, intensive thinning, especially from below, produced less variation in relative stem attributes characterizing stem shape and size. Thus, it can be concluded that thinning intensity, type, and the following growth effects have an impact on post-thinning stem shape and size of Scots pine trees. Our study presented detailed measurements on post-thinning stem growth of Scots pines that have been laborious or impracticable before the emergence of detailed 3D technologies. Moreover, the stem reconstructions from TLS and UAV provided variety of attributes characterizing stem shape and size that have not traditionally been feasible to obtain. The study demonstrated that detailed 3D technologies, such as TLS and UAV, provide information that can be used to generate new knowledge for supporting forest management and silviculture as well as improving ecological understanding of boreal forests.1 © 2020 The Author(s)
英文关键词Forest management; Ground-based LiDAR; Growth and yield; Silviculture; Terrestrial laser scanning; Unmanned aerial vehicle
语种英语
scopus关键词Antennas; Ecology; Image reconstruction; Mechanical variables measurement; Plants (botany); Seebeck effect; Surveying instruments; Unmanned aerial vehicles (UAV); Diameter-at-breast heights; Effects of thinning; Growing conditions; Quantitative assessments; Terrestrial laser scanning; Thinning intensity; Thinning treatment; Threedimensional (3-d); Forestry; biomass allocation; boreal forest; forest management; growth; morphology; pine; stem; thinning; unmanned vehicle; Ecology; Forestry; Growth; Pinus Sylvestris; Shape; Thinning; Trees; Pinus sylvestris
来源期刊Forest Ecology and Management
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/155119
作者单位Department of Forest Sciences, University of Helsinki, P.O. Box 27 (Latokartanonkaari 7), 00014 University of Helsinki, Finland; School of Forest Sciences, University of Eastern Finland, P.O. Box 111, Joensuu, 80101, Finland; Department of Remote Sensing and Photogrammetry, Finnish Geospatial Research Institute, P.O. Box 15, Masala, 02431, Finland; Department of Built Environment, School of Engineering, Aalto University, Espoo, 02150, Finland; Natural Resources Institute Finland, Latokartanonkaari 9, Helsinki, 00790, Finland
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Saarinen N.,Kankare V.,Yrttimaa T.,et al. Assessing the effects of thinning on stem growth allocation of individual Scots pine trees[J],2020,474.
APA Saarinen N..,Kankare V..,Yrttimaa T..,Viljanen N..,Honkavaara E..,...&Vastaranta M..(2020).Assessing the effects of thinning on stem growth allocation of individual Scots pine trees.Forest Ecology and Management,474.
MLA Saarinen N.,et al."Assessing the effects of thinning on stem growth allocation of individual Scots pine trees".Forest Ecology and Management 474(2020).
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